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Theory of Cryptography

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Cover of 'Theory of Cryptography'

Table of Contents

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    Book Overview
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    Chapter 1 Concurrent Zero Knowledge Without Complexity Assumptions
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    Chapter 2 Interactive Zero-Knowledge with Restricted Random Oracles
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    Chapter 3 Non-interactive Zero-Knowledge from Homomorphic Encryption
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    Chapter 4 Ring Signatures: Stronger Definitions, and Constructions Without Random Oracles
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    Chapter 5 Efficient Blind and Partially Blind Signatures Without Random Oracles
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    Chapter 6 Key Exchange Using Passwords and Long Keys
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    Chapter 7 Mercurial Commitments: Minimal Assumptions and Efficient Constructions
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    Chapter 8 Efficient Collision-Resistant Hashing from Worst-Case Assumptions on Cyclic Lattices
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    Chapter 9 On Error Correction in the Exponent
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    Chapter 10 On the Relation Between the Ideal Cipher and the Random Oracle Models
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    Chapter 11 Intrusion-Resilience Via the Bounded-Storage Model
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    Chapter 12 Perfectly Secure Password Protocols in the Bounded Retrieval Model
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    Chapter 13 Polylogarithmic Private Approximations and Efficient Matching
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    Chapter 14 Theory of Cryptography
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    Chapter 15 Unconditionally Secure Constant-Rounds Multi-party Computation for Equality, Comparison, Bits and Exponentiation
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    Chapter 16 Efficient Multi-party Computation with Dispute Control
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    Chapter 17 Round-Optimal and Efficient Verifiable Secret Sharing
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    Chapter 18 Generalized Environmental Security from Number Theoretic Assumptions
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    Chapter 19 Games and the Impossibility of Realizable Ideal Functionality
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    Chapter 20 Universally Composable Symbolic Analysis of Mutual Authentication and Key-Exchange Protocols
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    Chapter 21 Resource Fairness and Composability of Cryptographic Protocols
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    Chapter 22 Finding Pessiland
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    Chapter 23 Pseudorandom Generators from One-Way Functions: A Simple Construction for Any Hardness
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    Chapter 24 On the Complexity of Parallel Hardness Amplification for One-Way Functions
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    Chapter 25 On Matroids and Non-ideal Secret Sharing
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    Chapter 26 Secure Computation with Partial Message Loss
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    Chapter 27 Communication Efficient Secure Linear Algebra
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    Chapter 28 Threshold and Proactive Pseudo-Random Permutations
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    Chapter 29 PRF Domain Extension Using DAGs
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    Chapter 30 Chosen-Ciphertext Security from Tag-Based Encryption
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    Chapter 31 Separating Sources for Encryption and Secret Sharing
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    Chapter 32 Erratum to: Theory of Cryptography
Overall attention for this book and its chapters
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4 Wikipedia pages
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Title
Theory of Cryptography
Published by
Springer, Berlin, Heidelberg, January 2006
DOI 10.1007/11681878
ISBNs
978-3-54-032731-8, 978-3-54-032732-5
Editors

Shai Halevi, Tal Rabin

Twitter Demographics

The data shown below were collected from the profiles of 6 tweeters who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 20 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Japan 1 5%
Unknown 19 95%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 7 35%
Researcher 3 15%
Student > Master 3 15%
Student > Postgraduate 3 15%
Professor 1 5%
Other 3 15%
Readers by discipline Count As %
Computer Science 20 100%